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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Solvent Effects on Electronically Excited States: QM/Continuum Versus QM/Explicit Models
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Solvent Effects on Electronically Excited States: QM/Continuum Versus QM/Explicit Models

机译:对电子激发态的溶剂效应:QM /连续体与QM /显式模型

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The inclusion of solvent effects in the calculation of excited states is vital to obtain reliable absorption spectra and density of states of solvated chromophores. Here we analyze the performance of three classical approaches to describe aqueous solvent in the calculation of the absorption spectra and density of states of pyridine, tropone, and tropothione. Specifically, we compare the results obtained from quantum mechanics/polarizable continuum model (QM/PCM) versus quantum mechanics/molecular mechanics (QM/MM) in its electrostatic embedding (QM/MMee) and polarizable-embedding (QM/MMpol) fashions, against full-QM computations, in which the solvent is described at the same level of theory as the chromophore. We show that QM/PCM provides very accurate results describing the excitation energies of pi pi* and n pi* transitions, the last ones dominated by strong hydrogen-bonding effects, for the three chromophores. The QM/MMee approach also performs very well for both types of electronic transitions, although the description of the pi pi* ones is slightly worse than that obtained from QM/PCM. The QM/MMpol approach performs as well as QM/PCM for describing the energy of pi pi* states, but it is not able to provide a satisfactory description of hydrogen bonding effects on the n pi* states of pyridine and tropone. The relative intensity of the absorption bands is better accounted for by the explicit-solvent models than by the continuum-solvent approach.
机译:的溶剂效应在激发态的计算中包括至关重要的是要获得可靠的吸收光谱和溶剂化的发色团的态密度。在这里,我们分析了三种经典方法的性能来描述在吡啶,环庚三烯酮,和tropothione的状态的吸收光谱和密度的计算水性溶剂。具体来说,我们比较来自量子力学/可极化连续模型(QM / PCM)对量子力学中获得的结果/分子力学(QM / MM)在其静电嵌入(QM / MMEE)和极化嵌入(QM / MMpol)时装,针对全QM计算,其中溶剂是在同一水平理论的作为发色团说明。我们表明,QM / PCM提供了描述PI pi的激发能非常准确的结果*和n PI *跃迁,通过强氢键作用占主导地位的最后的,用于三个发色团。的QM / MMEE方法也有很好的表现为两种类型的电子跃迁的,尽管PI PI *者的描述比从QM / PCM获得略差。的QM / MMpol方法执行以及用于描述PI pi的能量*状态QM / PCM,但它不能提供的氢键影响的令人满意的描述在n PI *吡啶和环庚三烯酮的状态。的吸收谱带的相对强度被更好地用显式溶剂模型比由连续溶剂的方法。

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